多电感环路检测器的自动故障诊断

Nisha Kurian, Anoop Thomas, B. George
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引用次数: 2

摘要

多电感环路检测器是一种先进的电感环路传感器,可以在交通异构和不服从车道的情况下测量交通流参数。这种传感器由许多串联的电感回路组成,每个回路上都有一个并联电容器。传感器的这些电感和电容元件在工作过程中可能发生开路或短路故障。这样的错误会导致对从回路获得的数据的错误解释。传统的电感回路检测器故障诊断方法既需要经验丰富的技术人员,又需要从道路上的锯切槽中提取回路,耗时耗力。这也意味着,在传感器系统恢复功能之前,无法测量交通流量参数。维修活动还会扰乱交通。提出了一种基于脉冲测试的串联多电感环路检测器故障自动诊断方法。该系统通过方便地显示故障状态,帮助诊断与传感器结构的电感和电容元件相关的开/短故障。由于该方法可以准确地识别故障位置和故障类型,因此可以将修复动作定位。因此,拟议的系统大大节省了维修时间和维修费用。开发了一个嵌入式系统来实现该方案,并在一个循环样机上进行了测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automated fault diagnosis in Multiple Inductive Loop Detectors
Multiple Inductive Loop Detectors are advanced Inductive Loop Sensors that can measure traffic flow parameters in even conditions where the traffic is heterogeneous and does not conform to lanes. This sensor consists of many inductive loops in series, with each loop having a parallel capacitor across it. These inductive and capacitive elements of the sensor may undergo open or short circuit faults during operation. Such faults lead to erroneous interpretation of data acquired from the loops. Conventional methods used for fault diagnosis in inductive loop detectors consume time and effort as they require experienced technicians and involve extraction of loops from the saw-cut slots on the road. This also means that the traffic flow parameters cannot be measured until the sensor system becomes functional again. The repair activities would also disturb traffic flow. This paper presents a method for automating fault diagnosis for series-connected Multiple Inductive Loop Detectors, based on an impulse test. The system helps in the diagnosis of open/short faults associated with the inductive and capacitive elements of the sensor structure by displaying the fault status conveniently. Since the fault location as well as the fault type can be precisely identified using this method, the repair actions are also localised. The proposed system thereby results in significant savings in both repair time and repair costs. An embedded system was developed to realize this scheme and the same was tested on a loop prototype.
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